Segui
Punnag Padhy
Punnag Padhy
PhD Candidate, Stanford University
Email verificata su stanford.edu
Titolo
Citata da
Citata da
Anno
On the electric field enhancement and performance of SPR gas sensor based on graphene for visible and near infrared
PK Maharana, R Jha, P Padhy
Sensors and Actuators B: Chemical 207, 117-122, 2015
1242015
On the field enhancement and performance of an ultra-stable SPR biosensor based on graphene
PK Maharana, P Padhy, R Jha
IEEE Photonics Technology Letters 25 (22), 2156-2159, 2013
872013
Near-field optical trapping in a non-conservative force field
MA Zaman, P Padhy, L Hesselink
Scientific reports 9 (1), 649, 2019
432019
Dielectrophoresis-assisted plasmonic trapping of dielectric nanoparticles
MA Zaman, P Padhy, PC Hansen, L Hesselink
Physical Review A 95 (2), 023840, 2017
232017
Adjoint method for estimating Jiles-Atherton hysteresis model parameters
MA Zaman, PC Hansen, LT Neustock, P Padhy, L Hesselink
Journal of Applied Physics 120 (9), 2016
222016
Solenoidal optical forces from a plasmonic Archimedean spiral
MA Zaman, P Padhy, L Hesselink
Physical Review A 100 (1), 013857, 2019
212019
Metal wire waveguide based all plasmonic refractive index sensor for terahertz frequencies
P Padhy, PK Sahu, R Jha
Sensors and Actuators B: Chemical 225, 115-120, 2016
202016
Microparticle transport along a planar electrode array using moving dielectrophoresis
MA Zaman, P Padhy, W Ren, M Wu, L Hesselink
Journal of Applied Physics 130 (3), 2021
172021
Extracting the potential-well of a near-field optical trap using the Helmholtz-Hodge decomposition
MA Zaman, P Padhy, PC Hansen, L Hesselink
Applied Physics Letters 112 (9), 2018
162018
On the substrate contribution to the back action trapping of plasmonic nanoparticles on resonant near-field traps in plasmonic films
P Padhy, MA Zaman, P Hansen, L Hesselink
Optics Express 25 (21), 26198-26214, 2017
152017
Capturing range of a near-field optical trap
MA Zaman, P Padhy, L Hesselink
Physical Review A 96 (4), 043825, 2017
152017
Optoelectronic tweezers with a non-uniform background field
MA Zaman, P Padhy, YT Cheng, L Galambos, L Hesselink
Applied Physics Letters 117 (17), 2020
142020
Modeling brownian microparticle trajectories in lab-on-a-chip devices with time varying dielectrophoretic or optical forces
MA Zaman, M Wu, P Padhy, MA Jensen, L Hesselink, RW Davis
Micromachines 12 (10), 1265, 2021
92021
Fokker-Planck analysis of optical near-field traps
MA Zaman, P Padhy, L Hesselink
Scientific Reports 9 (1), 9557, 2019
82019
Controlled transport of individual microparticles using dielectrophoresis
MA Zaman, P Padhy, M Wu, W Ren, MA Jensen, RW Davis, L Hesselink
Langmuir 39 (1), 101-110, 2022
72022
In-plane near-field optical barrier on a chip
P Padhy, MA Zaman, L Hesselink
Optics letters 44 (8), 2061-2064, 2019
72019
Dynamically controlled dielectrophoresis using resonant tuning
P Padhy, MA Zaman, MA Jensen, L Hesselink
Electrophoresis 42 (9-10), 1079-1092, 2021
62021
THz mode-coupling in photonic-crystal–surface-plasmon-coupled waveguides
T Srivastava, R Das, P Padhy, R Jha
Applied Physics B 118, 387-392, 2015
42015
A semi-analytical model of a near-field optical trapping potential well
MA Zaman, P Padhy, L Hesselink
Journal of Applied Physics 122 (16), 2017
32017
Bead-droplet reactor for high-fidelity solid-phase enzymatic dna synthesis
P Padhy, MA Zaman, MA Jensen, YT Cheng, Y Huang, L Galambos, ...
arXiv preprint arXiv:2211.06799, 2022
22022
Il sistema al momento non può eseguire l'operazione. Riprova più tardi.
Articoli 1–20